Nobilleau Fanny, Audet Sébastien, da Silva Babinet Alexandra, Tork Sanaa, Zaouter Charlotte, Liao Meijiang, Pilon Nicolas, Tétreault Martine, Patten Shunmoogum A, Samarut Éric
Department of Neuroscience, Faculty of Medicine, Université de Montréal, Montreal, QC, Canada.
University of Montréal Hospital Research Center (CRCHUM), Montreal, QC, Canada.
Nat Commun. 2025 Jul 1;16(1):6019. doi: 10.1038/s41467-025-60775-5.
DNA replication and repair are basic yet essential molecular processes for all cells. RFC1 encodes the largest subunit of the Replication Factor C, an essential clamp-loader for DNA replication and repair. Intronic repeat expansion in RFC1 has recently been associated with so-called RFC1-related disorders, which mainly encompass late-onset cerebellar ataxias. However, the mechanisms making certain tissues more susceptible to defects in these universal pathways remain mysterious. Here, we provide the first investigation of RFC1 gene function in vivo using zebrafish. We showed that RFC1 is expressed in neural progenitor cells within the developing cerebellum, where it maintains their genomic integrity during neurogenic maturation. Accordingly, RFC1 loss-of-function leads to a severe cerebellar phenotype due to impaired neurogenesis of both Purkinje and granule cells. Our data point to a specific role of RFC1 in the developing cerebellum, paving the way for a better understanding of the pathogenic mechanisms underlying RFC1-related disorders.
DNA复制和修复是所有细胞的基本且必不可少的分子过程。RFC1编码复制因子C的最大亚基,这是一种DNA复制和修复所必需的钳位装载蛋白。最近,RFC1中的内含子重复扩增与所谓的RFC1相关疾病有关,这些疾病主要包括迟发性小脑共济失调。然而,某些组织更容易受到这些通用途径缺陷影响的机制仍然不明。在这里,我们首次使用斑马鱼对RFC1基因在体内的功能进行了研究。我们发现RFC1在发育中的小脑内的神经祖细胞中表达,在神经发生成熟过程中维持其基因组完整性。因此,由于浦肯野细胞和颗粒细胞的神经发生受损,RFC1功能丧失会导致严重的小脑表型。我们的数据表明RFC1在发育中的小脑中具有特定作用,为更好地理解RFC1相关疾病的致病机制铺平了道路。